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Rapid optimization of dielectric resonator antennas using surrogate models

机译:替代模型快速优化介质谐振器天线

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Adjustment of geometry parameters and performance optimization of dielectric resonator antennas (DRAs) is a challenging task that requires electromagnetic (EM) simulations. In particular, DRA design automation is problematic due to high computational cost of accurate, high-fidelity EM simulations; specifically, embedding the EM solver directly into the optimization algorithm (e.g., gradient-based) may make the overall optimization costs inacceptable. In this paper, a computationally efficient simulation-driven DRA design is demonstrated. We present two DRA design cases with antenna geometry adjusted by means of surrogate-based optimization with the underlying low-fidelity model constructed from coarse-discretization EM simulations of the antenna of interest. The specific design approaches utilized here are space mapping and adaptively adjusted design specifications. For both examples, the optimized design is found at the computational cost corresponding only to a few high-fidelity simulations of the DRA.
机译:电介质谐振器天线(DRAS)的几何参数调整和性能优化是一种具有挑战性的任务,需要电磁(EM)模拟。特别是,由于精确,高保真EM模拟的高计算成本,DRA设计自动化是有问题的;具体地,将EM求解器直接嵌入到优化算法(例如,基于梯度)中可以使整体优化成本不可接受。在本文中,证明了一种计算有效的仿真驱动的DRA设计。我们展示了通过基于代理的优化调整的天线几何图中的两个DRA设计案例,利用来自感兴趣的天线的天线的粗离散化EM模拟构成的底层低保真模型来调整。这里使用的特定设计方法是空间映射和自适应调整的设计规范。对于这两个示例,优化的设计是以对应于DRA的几个高保真模拟的计算成本。

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